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Importance of pore size in high-pressure hydrogen storage by porous carbons
- Source :
- International Journal of Hydrogen Energy. 34:6314-6319
- Publication Year :
- 2009
- Publisher :
- Elsevier BV, 2009.
-
Abstract
- Development of high-capacity hydrogen-storage systems utilizing physisorption at high pressure and low temperature is hindered by poor understanding of the pore size/shape requirements for achieving the maximum hydrogen uptake. Tuning the carbon structure and pore size of carbide-derived carbons (CDCs) with high accuracy by using different starting carbides, chlorination temperatures and activation temperatures allows rational design of carbon materials with increased hydrogen-storage capacity. Systematic experimental investigation of a large number of CDCs with controlled pore size distributions and specific surface area (SSA) shows that pores larger than ∼1.5 nm contribute little to hydrogen storage. It has been experimentally demonstrated that, just as at ambient pressure, pores of 0.6–0.7 nm in diameter provide the largest H 2 uptake per unit SSA at elevated pressures and liquid nitrogen temperatures. The effect of pore size was stronger than the effect of surface chemistry on the hydrogen uptake.
- Subjects :
- Hydrogen
Renewable Energy, Sustainability and the Environment
Energy Engineering and Power Technology
chemistry.chemical_element
Liquid nitrogen
Condensed Matter Physics
Hydrogen storage
Fuel Technology
chemistry
Physisorption
Chemical engineering
Specific surface area
Physical chemistry
Carbide-derived carbon
Carbon
Ambient pressure
Subjects
Details
- ISSN :
- 03603199
- Volume :
- 34
- Database :
- OpenAIRE
- Journal :
- International Journal of Hydrogen Energy
- Accession number :
- edsair.doi...........ada7e4df7e52cc9b817a2e425ac535b4